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使用约束同时估计法对含放射性代谢物的正电子发射断层显像(PET)示踪剂进行非侵入性动力学建模:以C-SB201745为例进行评估

Non-invasive kinetic modelling of PET tracers with radiometabolites using a constrained simultaneous estimation method: evaluation with C-SB201745.

作者信息

Sari Hasan, Erlandsson Kjell, Marner Lisbeth, Law Ian, Larsson Henrik B W, Thielemans Kris, Ourselin Sébastien, Arridge Simon, Atkinson David, Hutton Brian F

机构信息

Institute of Nuclear Medicine, L.5 University College Hospital, 235 Euston Road, London, NW1 2BU, UK.

Neurobiology Research Unit, Center for Integrated Molecular Brain Imaging (CIMBI), Rigshospitalet, University of Copenhagen, Copenhagen, Denmark.

出版信息

EJNMMI Res. 2018 Jul 3;8(1):58. doi: 10.1186/s13550-018-0412-6.

Abstract

BACKGROUND

Kinetic analysis of dynamic PET data requires an accurate knowledge of available PET tracer concentration within blood plasma over time, known as the arterial input function (AIF). The gold standard method used to measure the AIF requires serial arterial blood sampling over the course of the PET scan, which is an invasive procedure and makes this method less practical in clinical settings. Traditional image-derived methods are limited to specific tracers and are not accurate if metabolites are present in the plasma.

RESULTS

In this work, we utilise an image-derived whole blood curve measurement to reduce the computational complexity of the simultaneous estimation method (SIME), which is capable of estimating the AIF directly from tissue time activity curves (TACs). This method was applied to data obtained from a serotonin receptor study (C-SB207145) and estimated parameter results are compared to results obtained using the original SIME and gold standard AIFs derived from arterial samples. Reproducibility of the method was assessed using test-retest data. It was shown that the incorporation of image-derived information increased the accuracy of total volume of distribution (V ) estimates, averaged across all regions, by 40% and non-displaceable binding potential (BP ) estimates by 16% compared to the original SIME. Particular improvements were observed in K parameter estimates. BP estimates, based on the proposed method and the gold standard arterial sample-derived AIF, were not significantly different (P=0.7).

CONCLUSIONS

The results of this work indicate that the proposed method with prior AIF information obtained from a partial volume corrected image-derived whole blood curve, and modelled parent fraction, has the potential to be used as an alternative non-invasive method to perform kinetic analysis of tracers with metabolite products.

摘要

背景

动态正电子发射断层扫描(PET)数据的动力学分析需要准确了解随时间变化的血浆中可用PET示踪剂浓度,即动脉输入函数(AIF)。用于测量AIF的金标准方法需要在PET扫描过程中进行连续动脉血采样,这是一种侵入性操作,使得该方法在临床环境中不太实用。传统的图像衍生方法仅限于特定的示踪剂,并且如果血浆中存在代谢物则不准确。

结果

在这项工作中,我们利用图像衍生的全血曲线测量来降低同时估计方法(SIME)的计算复杂性,该方法能够直接从组织时间活性曲线(TAC)估计AIF。该方法应用于从5-羟色胺受体研究(C-SB207145)获得的数据,并将估计参数结果与使用原始SIME和从动脉样本获得的金标准AIF获得的结果进行比较。使用重测数据评估该方法的可重复性。结果表明,与原始SIME相比,纳入图像衍生信息使所有区域平均分布总体积(V)估计的准确性提高了40%,不可置换结合潜力(BP)估计的准确性提高了16%。在K参数估计中观察到了特别的改进。基于所提出的方法和金标准动脉样本衍生AIF的BP估计没有显著差异(P=0.7)。

结论

这项工作的结果表明,所提出的方法利用从部分体积校正的图像衍生全血曲线获得的先验AIF信息和建模的母体分数,有可能用作对具有代谢产物的示踪剂进行动力学分析的替代非侵入性方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da8c/6029994/1c4b75e3a3aa/13550_2018_412_Fig1_HTML.jpg

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